References
- Alauze, C., Der Hagopian, J., Gaudiller, L. and Voinis, P. (2001), "Active balancing of turbomachinery: Application to large shaft lines", J. Vib. Control, 7, 249-278. https://doi.org/10.1177/107754630100700207
- Bishop, R. and Gladwell, G. (1959), "The vibration and balancing of an unbalanced flexible rotor", J. Mech. Eng. Sci., 1, 66-77. https://doi.org/10.1243/JMES_JOUR_1959_001_010_02
- Foiles, W.C., Allaire, P.E. and Gunter, E.J. (1998), "Review: rotor balancing", Shock Vib., 5, 325-336. https://doi.org/10.1155/1998/648518
- Goodman, T.P. (1964), "A least-square method for computing balance corrections", Trans. ASME Journal of Engineering for Industry, 86, 273-279. https://doi.org/10.1115/1.3670532
- Haykin, S.S. (1998), Neural networks: a comprehensive foundation, 2nd Edition, Prentice Hall.
- Irwin, G.W., Warwick, K. and Hunt, K.J. (1995), Neural network applications in control, The Institution of Electrical Engineers (ISBN 0 85296 852 3).
- Kang, Y., Liu, C.P. and Sheen, G.J. (1996), "A modified influence coefficient method for balancing unsymmetrical rotor-bearing systems", J. Sound Vib., 2(11), 199-218.
- Kang, Y. (1997), "Development and modification of a unified balancing method for unsymmetrical rotor-bearing system", J. Sound Vib., 199, 349-368. https://doi.org/10.1006/jsvi.1996.0652
- Mahfoudh, J., Der Hagopian, J. and Cadoux, J. (1988), "Equilibrage multiplans-multivitesses avec des contraintes imposees sur les deplacements", Mecanique, Materiaux, Electricite, 427, 38-42.
- Parkinson, A.G., Darlow, M.S. and Smalley, A.J. (1980), "A theoretical Introduction to the development of a unified approach to flexible rotor Balancing", J. Sound Vib., 68, 489-506. https://doi.org/10.1016/0022-460X(80)90532-5
- Riedmiller, M. and Braun, H. (1993), "A direct adaptive method for faster backpropagation learning: The RPROP algorithm", Proc. of the IEEE International Conf. on Neural Networks.
- Rieger, N.F. (1986), Balancing of a rigid and flexible rotor, The shock and vibration information centre, United States Department of Defense, 614P.
- Saldarriaga, M.V. and Steffen Jr, V. (2003), "Balancing of flexible rotors without trial weights by using optimization techniques", 17th International Congress of Mechanical Engineering, Sao Paulo (Brazil).
- Saldarriaga, M.V., Mahfoud, J., Steffen Jr, V. and Der Hagopian, J. (2007), "Balancing of a highly flexible rotor by using artificial neural networks", Proc. of the ASME International Design Engineering Technical Conf. & Computers and Information in Engineering Conf., DETC2007, Las Vegas, USA, 4-7 September.
- Steffen Jr, V. and Lacerda, H. (1996), "The balancing of flexible rotors", The International Journal of Analytical and Experimental Modal Analysis, 2(1-2).
- Xu, B. and Qu, L. (2001), "A new practical modal method for rotor balancing", Proc. of the Institution of Mechanical Engineers, 215, Part C, 179-189.
- Zhoue, S. (2001), "Active balancing and vibration control of rotating machinery: a survey", The Shock and Vibration Digest, September, 361-371.
Cited by
- Convolutional neural network and impedance-based SHM applied to damage detection vol.2, pp.3, 2020, https://doi.org/10.1088/2631-8695/abb568
- Employing TLBO and SCE for optimal prediction of the compressive strength of concrete vol.26, pp.6, 2009, https://doi.org/10.12989/sss.2020.26.6.753
- A novel transient balancing technology of the rotor system based on multi modal analysis and feature points selection vol.510, pp.None, 2009, https://doi.org/10.1016/j.jsv.2021.116321